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首页> 外文期刊>Journal of Performance of Constructed Facilities >Optimum Design of a Controlled Cable-Stayed Footbridge Subject to a Running Event Using Semiactive and Passive Mass Dampers
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Optimum Design of a Controlled Cable-Stayed Footbridge Subject to a Running Event Using Semiactive and Passive Mass Dampers

机译:使用半电视和被动质量阻尼器的运行事件的受控电缆呆脚架的最佳设计

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摘要

Pedestrian-induced actions cause high vibration amplitudes in flexible and lightweight structures such as cable-stayed bridges. The high vibrational response is considered a serious serviceability problem that must be avoided either at the design stage or when retrofitting the structure. The use of control devices, particularly tuned mass dampers (TMDs) and viscous dampers (VDs), can be justified to reduce the structural dynamic response. This paper concerns the optimum design of a cable-stayed steel footbridge and its control devices to withstand a running event while guaranteeing all the serviceability criteria. Four different techniques (no control, VD, and VD with passive or semiactive TMDs) are presented to illustrate the effect of these control strategies in the optimum design geometry, dynamic responses, and cost.
机译:行人诱导的动作导致柔性和轻质结构中的高振动幅度,例如缆绳撑桥。 高振动响应被认为是必须在设计阶段或改装结构时必须避免的严重可靠性问题。 可以对控制装置,特别调谐的质量阻尼器(TMDS)和粘性阻尼器(VDS)进行使用,以减少结构动态响应。 本文涉及缆绳储存钢行桥及其控制装置的最佳设计,以承受运行事件,同时保证所有可维护性标准。 提出了四种不同的技术(无控制,VD和VD),以说明这些控制策略在最佳设计几何形状,动态响应和成本中的影响。

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